Real-Time Adaptive Noise and Echo Cancellation on a Compact Microcontroller

J. Vandermeer, F. Giuliani, Erica Low, Katherine Thomasson, A. Spanias
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Abstract

This paper provides an analysis of current advancements made in acoustic noise and echo cancellation (ANEC) and describes a real-time acoustic noise and feedback cancellation implementation that is low-cost and effective. Challenges in developing this compact mobile ANEC system included integrating a high order normalized least mean square (NLMS) adaptive algorithm with an analog synchronized twochannel interface. The paper also presents electrical and mechanical details of this small footprint ANEC prototype along with test results. The system was evaluated in terms of performance and computational complexity using objective and subjective evaluations. Metrics used to assess real-time performance included the Echo Return Loss Enhancement (ERLE), the Added Stable Gain (ASG) as well as algorithm convergence curves.
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基于紧凑型微控制器的实时自适应噪声和回波消除
本文分析了当前在声学噪声和回波消除(ANEC)方面取得的进展,并描述了一种低成本、有效的实时声学噪声和反馈消除实现。开发这一紧凑型移动ANEC系统的挑战包括将高阶归一化最小均方(NLMS)自适应算法与模拟同步双通道接口集成在一起。本文还介绍了这种小足迹ANEC原型的电气和机械细节以及测试结果。采用客观和主观评价方法对系统的性能和计算复杂度进行了评价。用于评估实时性能的指标包括回波回波损耗增强(ERLE)、增加稳定增益(ASG)以及算法收敛曲线。
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